Solid and liquid phase detection
Solid and liquid phase detection, Total:366 items.
The international standard classification for "Solid and liquid phase detection" includes: Other standards related to optics and optical measurements , Testing (Vocabularies) , Chemical analysis of metals , Iron and steel castings , Non-destructive testing , General methods of tests and analysis for food products , Aluminium and aluminium alloys , Valves in general , Other equipment for petroleum and natural gas industries , Extraction and processing of petroleum and natural gas , Non-destructive testing of metals , Biology. Botany. Zoology , Protection against crime , Cosmetics. Toiletries .
The Chinese standard classification for "Solid and liquid phase detection" includes: chromatograph , Basic standards and general methods , Metal physical property test method , Casting , Basic standards and general methods , Valve , Petroleum drilling , Petroleum extraction , Basic Subject in general , Beekeeping, silkworm keeping , Crime judging technology , Cosmetics .
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 43139-2023 Density detecting method for vacuum solidified samples of casting aluminum alloys liquid
- GB/T 22220-2008 Determination of cholesterol in foods—HIgh-performance liquid chromatography
- GB/T 16544-2008 Non-destructive testing - Practice for gamma-ray radiographic testing by panoramic exposure
- GB/T 6526-1986 Self-fluxing alloy powders--Determination of solidus-liquidus temperature range
- GB/T 12604.2-2005 Non-destructive testing - Terminology - Terms used in radiographic testing
- GB/T 23910-2009 Non-destructive testing—Metal intensifying screens for radiographic testing
- GB/T 26642-2011 Non-destructive testing - Test method for computed radiography of metallic materials
- GB/T 5677-2007 Radiographic testing for steel castings
- GB/T 32212-2015 Standard practice for testing fixed-wavelength photometric detectors used in liquid chromatography
- GB/T 23209-2008 Determination of lutein in milk powder—HPLC-UV method
Military Standard of the People's Republic of China-General Armament Department
- GJB 1187A-2019 Radiographic testing
- GJB 9547-2018 High-energy X-ray photography detection method of large solid rocket motor combustion chamber
Professional Standard - Machinery
- JB/T 7902-2006 Non-destructive testing-Image quality indicators(wire type) for radiographic testing
- JB/T 5075-2004 Non-destructive testing -- Metal intensifying screens for radiographic testing
- JB/T 6440-2008 Methods of radiographic examination for steel castings valves
- JB/T 9358-1999 Test method for fixed wavelength(254nm) UV detector used in liquid chromatography
Professional Standard - Non-ferrous Metal
- YS/T 533-2006 Self-fluxing alloy powders-Determination of solidus-Liquidus temperature range
Professional Standard - Petroleum
- SY 5382-2009 Drilling Fluid Solid Phase Content Meter
- SY/T 5382-1991 Drilling Fluid Solid Phase Content Meter
- SY/T 5834-1993 Measurement method and evaluation index of low solids killing fluid performance
- SY/T 6677-2007 Calibration method of mnd retort assembly
- SY/T 5834-2007 Performance specifications and measuring methods of low-solid killing fluid
- SY 6677-2007 Calibration Method of Drilling Fluid Solid Phase Quantity Meter
国家能源局
- SY/T 6677-2022 Calibration method of drilling fuid retort assembly
- SY/T 5382-2009 Drilling fluid retort for liquid and solid analysis
未注明发布机构
- SAE AMS 4764H-2024 Copper Alloy, Brazing Filler Metal, 52.5Cu - 38Mn - 9.5Ni, 1615 to 1700 ¡ãF (879 to 927 ¡ãC) Solidus-Liquidus Range
- SAE AMS4783G-2014 Brazing Filler Metal@ High Temperature 50Co - 8.0Si - 19Cr - 17Ni - 4.0W - 0.80B 2050° - 2100°F (1120° - 1150°C) Solidus-Liquidus Range
- GJB 593.2-1988 Nondestructive Testing Quality Control Specifications Radiographic Inspection
- DIN EN 12679 E:2018-01 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources
- SAE AMS4777J-2018 Nickel Alloy, Brazing Filler Metal 82Ni 4.5Si 7.0Cr 3.1B 3.0Fe, 1780 to 1830°F (971 to 999°C) Solidus-Liquidus Range
- DIN EN 16407-2 E:2012-04 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2 : Double Wall radiographic inspection
国家市场监督管理总局、中国国家标准化管理委员会
- GB/T 5677-2018 Castings—Radiographic testing
Professional Standard - Civil Aviation
- MH/T 3009-2012 Nondestructive testing for aircraft.Radiographic testing
Group Standards of the People's Republic of China
- T/DLSHXH 011-2024 Liquid Chromatography Column for Detection of Aromatic Hydrocarbons in Diesel Oil
- T/ZZB 3063-2023 Solid-liquid two-phase flow hydraulic diaphragm pump
- T/CAIA SHO21-2024 Water quality Determination of alkyl mercury and inorganic divalent mercury Online solid phase extraction-liquid chromatography-inductively coupled plasma mass spectrometry
- T/JAASS 18-2021 Determination of vitamin A, D, E in milk and milk powder by On-line solid phase extraction - heart cutting of two-dimensional liquid phase chromatography
- T/HNIMA 001-2023 Calibration method for liquid chromatograph with charged aerosol detector
- T/SHFCA 002-2024 Determination of vitamin A, D, E in foods for special medical purposes by On-line solid phase extraction-two-dimensional liquid phase chromatography
- T/CRHA 060-2024 Detecting organic acids in urine—Gas chromatography-mass spectrometry method
- T/DLSHXH 011-2023 Liquid Chromatography Column for Detection of Aromatic Hydrocarbons in Diesel Oil
Shandong Provincial Standard of the People's Republic of China
- DB37/T 4157-2020 Determination of Carbofuran in Water by Solid Phase Extraction-Liquid Chromatography
- DB37/T 4155-2020 Determination of Water Quality Chlorpyrifos Solid Phase Extraction-Liquid Chromatography
- DB37/T 4146-2020 Determination of Benzidine in Water by Solid Phase Extraction-Liquid Chromatography-Tandem Mass Spectrometry
- DB37/T 4148-2020 Determination of Water Quality 2,4-D by Solid Phase Extraction-Liquid Chromatography
- DB37/T 4161-2020 Determination of Water Quality Aldicarb Solid Phase Extraction-Liquid Chromatography
Professional Standard - Environmental Protection
- HJ 648-2013 Water quality - Determination of nitroaromatics by gas chromatography
- HJ 478-2009 Water quality-Determination of polycyclic aromatic hydrocarbons byliquid-liquid extraction and solid-phase etracton-High performance liquid chromatography
未注明发布机构
- DIN EN 16407-2 E:2012-04 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2 : Double Wall radiographic inspection
- GJB 593.2-1988 Nondestructive Testing Quality Control Specifications Radiographic Inspection
- SAE AMS 4764H-2024 Copper Alloy, Brazing Filler Metal, 52.5Cu - 38Mn - 9.5Ni, 1615 to 1700 ¡ãF (879 to 927 ¡ãC) Solidus-Liquidus Range
- SAE AMS4783G-2014 Brazing Filler Metal@ High Temperature 50Co - 8.0Si - 19Cr - 17Ni - 4.0W - 0.80B 2050° - 2100°F (1120° - 1150°C) Solidus-Liquidus Range
- SAE AMS4777J-2018 Nickel Alloy, Brazing Filler Metal 82Ni 4.5Si 7.0Cr 3.1B 3.0Fe, 1780 to 1830°F (971 to 999°C) Solidus-Liquidus Range
- DIN EN 12679 E:2018-01 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources
Anhui Provincial Standard of the People's Republic of China
- DB34/T 1843-2013 Molecularly imprinted solid-phase extraction-liquid chromatography-tandem mass spectrometry for the detection of triazine herbicides in water
中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会
- GB/T 19495.9-2017 Detection of genetically modified organisms and derived products―Liquid bead array detection for plant products
Liaoning Provincial Standard of the People's Republic of China
- DB21/T 3116-2019 Determination of Gluco-oligosaccharide Content by Liquid Chromatography
Guangdong Provincial Standard of the People's Republic of China
- DB44/T 935-2011 Industrial Computed Radiography Inspection
National Metrological Verification Regulations of the People's Republic of China
- JJG 705-2002 Verification Regulation of Liquid Chromatographs
- JJG(石油) 16-1991 Verification Regulation of Equipment for Measuring Solid Content in Drilling Fluids
- JJG 705-2014 Verification regulation for liquid chromatographs
水利部
- SL 761-2018 Water quality. Determination of atrazine. Solid phase extraction. High performance liquid chromatography
国家质量监督检验检疫总局
- SN/T 4906-2017 Determination of alkylphenol disulfide in rubber - High performance liquid chromatography-ultraviolet detection method
Professional Standard - Aviation
- HB/Z 60-1981 Radiographic inspection
- HB/Z 60-1996 Radiographic inspection
Professional Standard - Supply and Marketing Cooperative
- GH/T 1081-2012 Determination of poplar tree gum in propolis—Reversed-phase high performance liquid chromatography method
Professional Standard - Railway
- TB/T 1558.3-2010 Non-destructive testing of welding for rolling stock Part 3: Radiographic testing
国家铁路局
- TB/T 1558.3-2020 Non-destructive testing of welding for rolling stock-Part 3:Radiographic testing with film
Professional Standard - Public Safety Standards
- GA/T 1616-2019 Forensic sciences—Examination methods for chloramphenicol in biological samples—HPLC and LC-MS
Professional Standard - Commodity Inspection
- SN/T 1499-2004 Determination of kojic acid in cosmetics -- Liquid chromatography
International Organization for Standardization (ISO)
- ISO 20179:2005 Water quality - Determination of microcystins - Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection
- ISO 11369:1997 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- ISO/DIS 32679:2023 Non-destructive testing — Radiographic testing — Determination of the size of industrial radiographic gamma sources
- ISO/CD 32679:2011 Non-destructive testing — Radiographic testing — Determination of the size of industrial radiographic gamma sources
- ISO/FDIS 32679:2024 Non-destructive testing — Radiographic testing — Determination of the size of industrial radiographic gamma sources
- ISO 20769-2:2018 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2: Double wall radiographic inspection
- ISO 20769-1:2018 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1: Tangential radiographic inspection
- ISO 17636-1:2022 Non-destructive testing of welds — Radiographic testing — Part 1: X- and gamma-ray techniques with film
- ISO 17636-2:2022 Non-destructive testing of welds — Radiographic testing — Part 2: X- and gamma-ray techniques with digital detectors
Korean Agency for Technology and Standards (KATS)
- KS I ISO 20179:2021 Water quality — Determination of microcystins — Method using solid phase extraction(SPE) and high performance liquid chromatography(HPLC) with ultraviolet(UV) detection
- KS I ISO 20179:2006 Water quality-Determination of microcystins-Method using solid phase extraction(SPE) and high performance liquid chromatography(HPLC) with ultraviolet(UV) detection
- KS I ISO 11369:2008 Water quality-Determination of selected plant treatment agents-Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- KS I ISO 20179-2006(2016) Water quality-Determination of microcystins-Method using solid phase extraction(SPE) and high performance liquid chromatography(HPLC) with ultraviolet(UV) detection
- KS I ISO 11369-2018 Water quality-Determination of selected plant treatment agents-Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- KS I ISO 11369-2008(2018) Water quality-Determination of selected plant treatment agents-Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- KS I ISO 22478:2021 Water quality — Determination of certain explosives and related compounds — Method using high-performance liquid chromatography(HPLC) with UV detection
- KS B ISO 12721-2023 Non-destructive testing — Thermal neutron radiographic testing — Determination of beam L/D ratio
- KS A 4606-2005(2020) Industrial X-ray apparatus for radiographic testing
- KS D ISO 12096-2018 Submerged arc-welded steel tubes for pressure purposes-Radiographic testing of the weld seam for the detection of imperfections
- KS B ISO 5579-2016(2021) Non-destructive testing-Radiographic examination of metallic materials by X-and gamma-rays-Basic rules
- KS I ISO 17495-2007(2017) Water quality-Determination of selected nitrophenols-Method by solidphase extraction and gas chromatography with mass spectrometric detection
- KS B ISO 11537-2008(2013) Non-destructive testing-Thermal neutron radiographic testing-General principles and basic rules
- KS D 0245-1982 Method of radiographic testing for aluminium T-welds
- KS D 0245-1992(2012) Method of radiographic testing for aluminium T-welds
- KS I ISO 17993-2008(2013) Water quality-Determination of 15 polycyclic aromatic hydrocarbons(PAH) in water by HPLC with fluorescence detection after liquid-liquid extraction
- KS D 0245-2017 Method of radiographic testing for aluminium T-welds
KR-KS
- KS I ISO 20179-2021 Water quality — Determination of microcystins — Method using solid phase extraction(SPE) and high performance liquid chromatography(HPLC) with ultraviolet(UV) detection
- KS D 0227-2023 Radiographic testing for steel castings
- KS I ISO 22478-2021 Water quality — Determination of certain explosives and related compounds — Method using high-performance liquid chromatography(HPLC) with UV detection
- KS D 0242-2023 Radiographic testing for welded joints in aluminium
- KS D 0237-2023 Radiographic testing for welded joints in stainless steel
- KS B ISO 10893-6-2023 Non-destructive testing of steel tubes — Part 6: Radiographic testing of the weld seam of welded steel tubes for the detection of imperfections
Society of Automotive Engineers (SAE)
- SAE AMS4778H-2002 Nickel Alloy Brazing Filler Metal 92Ni 4.5Si 3.1B, 1800 to 1900°F Solidus-Liquidus Range
- SAE AMS4778K-2013 Nickel Alloy, Brazing Filler Metal 92Ni 4.5Si 3.1B, 1800 to 1900°F Solidus-Liquidus Range
- SAE AMS4779G-2005 Nickel Alloy, Brazing Filler Metal 94Ni 3.5Si 1.8B 1800 to 1950°F (982 to 1066°C) Solidus-Liquidus Range
- SAE AMS4767F-1999 Silver Alloy, Brazing Filler Metal 92.5Ag 7.2Cu 0.22Li, 1435 to 1635°F (779 to 891°C) Solidus-Liquidus Range
- SAE AMS4787F-2000 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au 18Ni, 1740°F (949°C) Solidus-Liquidus Temperature
- SAE AMS4765F-2015 Silver Alloy@ Brazing Filler Metal 56Ag - 42Cu - 2.0Ni 1420 to 1640 ��(771 to 893 �� Solidus-Liquidus Range (UNS P07560)
- SAE AMS4773F-1999 Silver Alloy, Brazing Filler Metal 60Ag 30Cu 10Sn 1115 to 1325 °F (602 to 718°C) Solidus-Liquidus Range
- SAE AMS4765E-1999 Silver Alloy, Brazing Filler Metal 56Ag 42Cu 2.0Ni 1420 to 1640 °F (771 to 893°C) Solidus-Liquidus Range
- SAE AMS4782F-2005 Nickel Alloy, Brazing Filler Metal 71Ni 10Si 19Cr, 1975 to 2075°F (1080 to 1135°C) Solidus-Liquidus Range
- SAE AMS4772J-1999 Silver Alloy, Brazing Filler Metal 54Ag 40Cu 5.0Zn 1.0Ni 1325 to 1575°F (718 to 857°C) Solidus-Liquidus Range
- SAE AMS4761B-2015 Silver Alloy@ Brazing Filler Metal 38Ag �C 32Cu �C 28Zn �C 2.0Sn 1200 to 1330 ��(649 to 721 �� Solidus-Liquidus Range (UNS P07380)
- SAE AMS4763A-1999 Silver Alloy, Brazing Filler Metal 56Ag 22Cu 17Zn 5.0Sn 1145 to 1205°F (618 to 652°C) Solidus-Liquidus Range
- SAE AMS4774F-1999 Silver Alloy, Brazing Filler Metal 63Ag 28.5Cu 6.0Sn 2.5Ni, 1275 to 1475°F (691 to 802°C) Solidus-Liquidus Range
- SAE MAM4778C-2000 NICKEL ALLOY, BRAZING FILLER METAL 92Ni - 4.5Si - 3.1B 980 to 1040 °C Solidus-Liquidus Range
- SAE MAM4778B-1994 NICKEL ALLOY, BRAZING FILLER METAL 92Ni - 4.5Si - 3.1B 980 to 1040 °C Solidus-Liquidus Range
- SAE AMS4778G-2000 Nickel Alloy, Brazing Filler Metal 92Ni - 4.5Si - 3.1B 1800 to 1900 °F Solidus-Liquidus Range
- SAE MAM4778A-1992 NICKEL ALLOY BRAZING FILLER METAL 92Ni - 4.5Si - 3.1B 980 to 1040 °C Solidus-Liquidus Range
- SAE AMS4761A-1999 Silver Alloy Brazing Filler Metal 38Ag 32Cu 28Zn 2.0Sn 1200 to 1330°F (649 to 721°C) Solidus-Liquidus Range
- SAE AMS4778H-2006 Nickel Alloy, Brazing Filler Metal 92Ni - 4.5Si - 3.1B 1800 to 1900 °F Solidus-Liquidus Range
- SAE AMS4788A-1992 Silver Alloy Brazing Filler Metal 50Ag 28Zn 20Cu 2.0Ni 1220 to 1305°F (660 to 707°C) Solidus-Liquidus Range
- SAE MAM4778-1989 BRAZING FILLER METAL, NICKEL ALLOY 92Ni - 4.5Si - 3.1B 980° - 1040°C Solidus-Liquidus Range
- SAE AMS4777G-2005 Nickel Alloy, Brazing Filler Metal 82Ni 4.5Si 7.0Cr 3.1B 3.0Fe, 1780 to 1830°F (971 to 999°C) Solidus-Liquidus Range
- SAE AMS4771H-1999 Silver Alloy, Brazing Filler Metal 50Ag 16Cd 15.5Zn 15.5Cu, 3.0Ni, 1170 to 1270°F (632 to 688°C) Solidus-Liquidus Range
- SAE AMS4782H-2022 Nickel Alloy, Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 °F (1080 °C) Solidus, 2075 °F (1135 °C) Liquidus
- SAE AMS4779L-2022 Nickel Alloy, Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 °F (982 °C) Solidus, 1950 °F (1066 °C) Liquidus
- SAE AMS4775H-2005 Nickel Alloy, Brazing Filler Metal 73Ni 0.75C 4.5Si 14Cr 3.1B 4.5Fe, 1790 to 1970°F (977 to 1077°C) Solidus-Liquidus Range
- SAE AMS4778J-2012 Nickel Alloy Brazing Filler Metal 92Ni 4.5Si 3.1B, 1800 to 1900°F Solidus-Liquidus Range
- SAE AMS4777H-2010 Nickel Alloy, Brazing Filler Metal 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780 to 1830 °F (971 to 999 °C) Solidus-Liquidus Range. (UNS N99620)
- SAE AMS4776G-2005 Nickel Alloy, Brazing Filler Metal 73Ni 4.5Si 14Cr 3.1B 4.5Fe (Low Carbon) 1790 to 1970°F (977 to 1077°C) Solidus-Liquidus Range
- SAE AMS4779G-2012 Nickel Alloy, Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 to 1950 °F (982 to 1066 °C) Solidus-Liquidus Range
- SAE AMS4782F-2012 Nickel Alloy, Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 to 2075 °F (1080 to 1135 °C) Solidus-Liquidus Range
- SAE AMS4787H-2022 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature 82Au - 18Ni 1740 °F (949 °C) Solidus-Liquidus Temperature
- SAE AMS4782E-2000 Nickel Alloy, Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 to 2075 °F (1080 to 1135 °C) Solidus-Liquidus Range
- SAE AMS4775J-2010 Nickel Alloy, Brazing Filler Metal 73Ni - 0.75C - 4.5Si - 14Cr - 3.1B - 4.5Fe 1790 to 1970 Degrees F (977 to 1077 Degrees C) Solidus-Liquidus Range (UNS N99600)
- SAE AMS4779F-2000 Nickel Alloy, Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 to 1950 °F (982 to 1066 °C) Solidus-Liquidus Range
- SAE AMS4787F-2008 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature 82Au - 18Ni 1740 °F (949 °C) Solidus-Liquidus Temperature
- SAE AMS4764H-2024 Copper Alloy, Brazing Filler Metal, 52.5Cu - 38Mn - 9.5Ni, 1615 to 1700 °F (879 to 927 °C) Solidus-Liquidus Range
- SAE AMS4780E-2007 Manganese Alloy, Brazing Filler Metal 66Mn - 16Ni - 16Co - 0.80B 1770 to 1875 °F (966 to 1024 °C) Solidus-Liquidus Range
- SAE AMS4769F-2009 Silver Alloy, Brazing Filler Metal 45Ag - 24Cd - 16Zn - 15Cu 1125 to 1145 °F (607 to 618 °C) Solidus-Liquidus Range
- SAE AMS4784G-2012 Gold-Palladium-Nickel Alloy, Brazing Filler Metal, High Temperature 50Au - 25Pd - 25Ni 2015 to 2050 °F (1102 to 1121 °C) Solidus-Liquidus Range (UNS P00500)
- SAE AMS4763A-2009 Silver Alloy, Brazing Filler Metal 56Ag - 22Cu - 17Zn - 5.0Sn 1145 to 1205 °F (618 to 652 °C) Solidus-Liquidus Range
- SAE AMS4768H-2009 Silver Alloy, Brazing Filler Metal 35Ag - 26Cu - 21Zn - 18Cd 1125 to 1295 °F (607 to 702 °C) Solidus-Liquidus Range
- SAE AMS4763C-2023 Silver Alloy, Brazing Filler Metal 56Ag - 22Cu - 17Zn - 5.0Sn 1145 to 1205 °F (618 to 652 °C) Solidus-Liquidus Range
- SAE AMS4783F-2003 Cobalt Alloy, High Temperature Brazing Filler Metal 50Co 8.0Si 19Cr 17Ni 4.0W 0.80B 2050 to 2100°F (1121 TO 1149°C) Solidus-Liquidus Range
- SAE AMS4776H-2010 Nickel Alloy, Brazing Filler Metal 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790 to 1970 °F (977 to 1077 °C) Solidus-Liquidus Range (UNS N99610)
- SAE AMS4768J-2015 Silver Alloy, Brazing Filler Metal 35Ag - 26Cu - 21Zn - 18Cd 1125 to 1295 °F (607 to 702 °C) Solidus-Liquidus Range
- SAE AMS4761A-2009 Silver Alloy, Brazing Filler Metal 38Ag - 32Cu - 28Zn - 2.0Sn 1200 to 1330 °F (649 to 721 °C) Solidus-Liquidus Range
- SAE AMS4775L-2023 Nickel Alloy, Brazing Filler Metal 73Ni - 0.75C - 4.5Si - 14Cr - 3.1B - 4.5Fe 1790 °F (977 °C) Solidus to 1970 °F (1077 °C) Liquidus
- SAE AMS4771J-2015 Silver Alloy, Brazing Filler Metal 50Ag - 16Cd - 15.5Zn - 15.5Cu - 3.0Ni 1170 to 1270 °F (632 to 688 °C) Solidus-Liquidus Range
- SAE AMS4771H-2009 Silver Alloy, Brazing Filler Metal 50Ag - 16Cd - 15.5Zn - 15.5Cu - 3.0Ni 1170 to 1270 °F (632 to 688 °C) Solidus-Liquidus Range
- SAE AMS4788A-2009 Silver Alloy Brazing Filler Metal 50Ag - 28Zn - 20Cu - 2.0Ni 1220 to 1305 °F (660 to 707 °C) Solidus-Liquidus Range
- SAE AMS4770L-2015 Silver Alloy Brazing Filler Metal 50Ag - 18Cd - 16.5Zn - 15.5Cu 1160 to 1175 °F (627 to 635 °C) Solidus-Liquidus Range
- SAE AMS4770K-2009 Silver Alloy Brazing Filler Metal 50Ag - 18Cd - 16.5Zn - 15.5Cu 1160 to 1175 °F (627 to 635 °C) Solidus-Liquidus Range
- SAE AMS4777K-2023 Nickel Alloy, Brazing Filler Metal 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780 °F (971 °C) Solidus to 1830 °F (999 °C) Liquidus Range
- SAE AMS4776F-2000 Nickel Alloy, Brazing Filler Metal 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790 to 1970 °F (977 to 1077 °C) Solidus-Liquidus Range
- SAE AMS4776K-2023 Nickel Alloy, Brazing Filler Metal, 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon), 1790 °F (977 °C) Solidus to 1970 °F (1077 °C) Liquidus Range
- SAE AMS4784D-1999 GOLD-PALLADIUM-NICKEL ALLOY BRAZING FILLER METAL, HIGH TEMPERATURE 50Au - 25Pd - 25Ni 2015 to 2050 °F (1102 to 1121°C) Solidus-Liquidus Range
- SAE AMS4785F-2002 Gold-Palladium-Nickel Alloy, Brazing Filler Metal, High Temperature 30Au - 34Pd - 36Ni 2075 to 2130 °F (1135 to 1166 °C) Solidus-Liquidus Range
- SAE AMS4786K-2021 Gold-Palladium-Nickel Alloy, Brazing Filler Metal, High Temperature 70Au - 8.0Pd - 22Ni 1845 to 1915 °F (1007 to 1046 °C) Solidus-Liquidus Range (UNS P00700)
- SAE AMS4786F-2002 Gold-Palladium-Nickel Alloy, Brazing Filler Metal, High Temperature 70Au - 8.0Pd - 22Ni 1845 to 1915 °F (1007 to 1046 °C) Solidus-Liquidus Range
GSO
- GSO ISO 20179:2013 Water quality -- Determination of microcystins -- Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection
- OS GSO ISO 20179:2013 Water quality -- Determination of microcystins -- Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection
- BH GSO ISO 22478:2016 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection
- OS GSO ISO 22478:2013 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection
- GSO ISO 17495:2013 Water quality -- Determination of selected nitrophenols -- Method by solid-phase extraction and gas chromatography with mass spectrometric detection
- OS GSO ISO 17495:2013 Water quality -- Determination of selected nitrophenols -- Method by solid-phase extraction and gas chromatography with mass spectrometric detection
- BH GSO ISO 17495:2016 Water quality -- Determination of selected nitrophenols -- Method by solid-phase extraction and gas chromatography with mass spectrometric detection
SCC
- DANSK DS/ISO 20179:2006 Water quality - Determination of microcystins - Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection
- NS-EN 12679:2018 Non-destructive testing — Radiographic testing — Determination of the size of industrial radiographic gamma sources
- DANSK DS/EN 15890:2010 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- NS-EN 15890:2010 Foodstuffs — Determination of patulin in fruit juice and fruit based purée for infants and young children — HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- AWWA WQTC58856 Organophosphorous Pesticides Determination: Solid Phase Extraction Versus Liquid-Liquid Extraction
- DANSK DS/EN 14524:2004 Foodstuffs - Determination of okadaic acid in mussels - HPLC method with solid phase extraction clean-up, derivatization and fluorimetric detection
- NS-EN 14524:2004 Foodstuffs — Determination of okadaic acid in mussels — HPLC method with solid phase extraction clean-up, derivatization and fluorimetric detection
- UNE-EN 14524:2005 Foodstuffs - Determination of okadaic acid in mussels - HPLC method with solid phase extraction clean-up, derivatization and fluorimetric detection
- DANSK DS/EN ISO 11369:1997 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- UNE-EN 1435:1998 NON-DESTRUCTIVE EXAMINATION OF WELDS. RADIOGRAPHIC EXAMINATION OF WELDED JOINTS.
- ASD-STAN PREN 3877:1997 Aerospace Series Metallic Materials Test Method Determination of Solidus and Liquidus Temperatures by Differential Thermal Analysis of Braze Alloys
- DANSK DS/EN 12679:2018 Non-destructive testing – Radiographic testing – Determination of the size of industrial radiographic gamma sources
- DANSK DS/EN ISO 22478:2006 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection
- DIN EN 3877 E:1998 Draft Document - Aerospace series - Metallic materials - Test method; determination of solidus and liquidus temperatures by differential thermal analysis of braze alloys
- NS-EN ISO 11369:1997 Water quality — Determination of selected plant treatment agents — Method using high performance liquid chromatography with UV detection after solid-liquid extraction (ISO 11369:1997)
- DANSK DS/EN 12543-3:1999 Non-destructive testing – Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing – Part 3: Slit camera radiographic method
- NS-EN 12543-2:1999 Non-destructive testing — Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing — Part 2: Pinhole camera radiographic method
- NS-EN 12543-2:2021 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- AENOR UNE-EN 12543-2:2009 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- AENOR UNE-EN 12543-3:2000 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 3: Slit camera radiographic method
- NS-EN 12543-3:1999 Non-destructive testing — Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing — Part 3: Slit camera radiographic method
- NS-EN 12543-2:2008 Non-destructive testing — Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing — Part 2: Pinhole camera radiographic method
- DANSK DS/EN ISO 17495:2003 Water quality - Determination of selected nitrophenols - Method by solid-phase extraction and gas chromatography with mass spectrometric detection
- AENOR UNE-EN ISO 22478:2007 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection (ISO 22478:2006)
- 09/30195609 DC BS EN 15890. Foodstuffs. Determination of patulin in fruit juice and fruit based puree for young children. HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- NS-EN 16407-1:2014 Non-destructive testing — Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays — Part 1: Tangential radiographic inspection
- AENOR UNE-EN 16407-1:2014 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1: Tangential radiographic inspection
- AENOR UNE-EN 16407-2:2014 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2: Double wall radiographic inspection
- NS-EN 16407-2:2014 Non-destructive testing — Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays — Part 2: Double wall radiographic inspection
- 12/30258737 DC BS EN 16407-2. Non-destructive testing. Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays. Tangential radiographic inspection
- NS-EN ISO 22478:2006 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection (ISO 22478:2006)
- NS-EN 12681:2003 Founding — Radiographic examination
- DANSK DS/EN 16407-1:2014 Non-destructive testing – Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays – Part 1: Tangential radiographic inspection
- DANSK DS/EN 16407-2:2014 Non-destructive testing – Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays – Part 2: Double wall radiographic inspection
Association Francaise de Normalisation
- NF X45-600:1992 liquid - solid separation - Specifications for defining liquid-solid separating equipment
- NF EN 12679:2018 Non-destructive testing - Radiographic control - Determination of the size of industrial gamma radiography sources
- NF T90-123*NF EN ISO 11369:1997 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction.
- NF A09-232*NF EN 12679:2018 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources
- NF EN 15890:2010 Foodstuffs - Determination of patulin in fruit juice and fruit compote in infant nutrition - HPLC method with purification by liquid-liquid partition and solid phase extraction and UV detection
- NF EN ISO 22478:2006 Water quality - Determination of certain explosives and related compounds - High performance liquid chromatography (HPLC) method with UV detection
- NF A09-232:1999 Non destructive testing - Determination of the size of industrial radiographic sources - Radiographic method.
- NF EN ISO 11369:1997 Water quality - Dosage of certain plant treatment agents - High performance liquid chromatography (HPLC) method with UV detection after solid-liquid extraction
- NF A09-254-1:2014 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1 : tangential radiographic inspection
- NF A09-254-2:2014 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2 : Double wall radiographic inspection
- NF EN ISO 20769-1:2018 Non-destructive testing - Radiographic examination of corrosion and deposits in pipelines using X-rays and gamma rays - Part 1: tangential radiographic examination
- NF A04-190:2003 Founding - Radiographic examination.
- NF EN ISO 20769-2:2018 Non-destructive testing - Radiographic examination of corrosion and deposits in pipelines using X-rays and gamma rays - Part 2: double-wall radiographic examination
SAE - SAE International
- SAE AMS4787G-2017 Gold-Nickel Alloy, Brazing Filler Metal, High Temperature, 82Au 18Ni, 1740°F (949°C) Solidus-Liquidus Temperature
- SAE AMS4764B-1984 BRAZING FILLER METAL@ COPPER 52.5Cu - 38Mn - 9.5Ni 1615° - 1700°F (880° - 925°C) Solidus-Liquidus Range
- SAE AMS4779B-1981 Brazing Filler Metal@ Nickel 94Ni - 3.5Si - 1.8B 1800° - 1950°F (980° - 1065°C) Solidus-Liquidus Range
- SAE AMS4787C-1990 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni 1740°F (949°C) Solidus-Liquidus Temperature (UNS P00820)
- SAE AMS4779A-1978 Brazing Filler Metal@ Nickel 94Ni - 3.5Si - 1.8B 1800° - 1950°F (980° - 1065°C) Solidus-Liquidus Range
- SAE AMS4764A-1978 BRAZING FILLER METAL@ COPPER 52.5Cu - 38Mn - 9.5Ni 1615° - 1700°F (880° - 925°C) Solidus-Liquidus Range
- SAE AMS4777A-1978 Brazing Filler Metal@ Nickel 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780° - 1830°F (970° - 1000°C) Solidus-Liquidus Range
- SAE AMS4767C-1984 Brazing Filler Metal@ Silver 92.5Ag - 7.2Cu - 0.22Li 1435° - 1635° F (780° - 890°C) Solidus-Liquidus Range (UNS P07925)
- SAE AMS4773B-1978 BRAZING FILLER METAL@ SILVER 60Ag - 30Cu – 10Sn 1115° - 1325°F (600° - 720°C) Solidus-Liquidus Range (UNS P07600)
- SAE AMS4773C-1984 BRAZING FILLER METAL@ SILVER 60Ag - 30Cu – 10Sn 1115° - 1325°F (600° - 720°C) Solidus-Liquidus Range (UNS P07600)
- SAE AMS4766E-1991 BRAZING FILLER METAL@ SILVER 85Ag - 15Mn 1760° - 1780°F (960° to 970°C) Solidus-Liquidus Range (UNS P07850)
- SAE AMS4787A-1978 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni 1740°F (950°C) Solidus-Liquidus Temperature (UNS P00820)
- SAE AMS4777B-1981 Brazing Filler Metal@ Nickel 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780° - 1830°F (970° - 1000°C) Solidus-Liquidus Range
- SAE AMS4766C-1978 BRAZING FILLER METAL@ SILVER 85Ag - 15Mn 1760° - 1780°F (960° to 970°C) Solidus-Liquidus Range (UNS P07850)
- SAE AMS4766D-1984 BRAZING FILLER METAL@ SILVER 85Ag - 15Mn 1760° - 1780°F (960° to 970°C) Solidus-Liquidus Range (UNS P07850)
- SAE AMS4787B-1984 BRAZING FILLER METAL@ HIGH TEMPERATURE 82Au - 18Ni@ 1740°F (950°C) Solidus-Liquidus Temperature (UNS P00820)
- SAE AMS4782A-1978 Brazing Filler Metal@ Nickel 71Ni - 10Si - 19Cr 1975° - 2075°F (1080° - 1135°C) Solidus-Liquidus Range
- SAE AMS4778F-1994 NICKEL ALLOY@ BRAZING FILLER METAL 92Ni - 4.5Si - 3.1B 1800 to 1900 degrees Solidus-Liquidus Range (UNS N99630)
- SAE AMS4778D-1989 Brazing Filler Metal@ Nickel Alloy 92Ni - 4.5Si - 3.1B 1800° to 1900 °F Solidus-Liquidus Range (UNS N99630)
- SAE AMS4767B-1978 Brazing Filler Metal@ Silver 92.5Ag - 7.2Cu - 0.22Li 1435° - 1635° F (780° - 890°C) Solidus-Liquidus Range (UNS P07925)
- SAE AMS4773D-1991 BRAZING FILLER METAL@ SILVER 60Ag - 30Cu – 10Sn 1115° - 1325°F (602° - 718°C) Solidus-Liquidus Range (UNS P07600)
- SAE AMS4774C-1984 BRAZING FILLER METAL@ SILVER 63Ag – 28.5Cu – 6.0Sn - 2.5Ni 1275° - 1475°F (690° - 800°C) Solidus-Liquidus Range (UNS P07630)
- SAE AMS4769B-1978 Brazing Filler Metal@ Silver 45Ag - 24Cd - 16Zn - 15Cu 1125° - 1145°F (605° - 620°C) Solidus-Liquidus Range (UNS P07450)
- SAE AMS4775C-1981 Brazing Filler Metal@ Nickel 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe 1790° - 1970° F (975° to 1075°C) Solidus-Liquidus Range
- SAE AMS4785C-1990 BRAZING FILLER METAL@ HIGH TEMPERATURE 30Au - 34Pd - 36Ni 2075° - 2130°F (1135° - 1166°C) Solidus-Liquidus Range (UNS P00300)
- SAE AMS4775B-1978 Brazing Filler Metal@ Nickel 73Ni - 0.75C - 4.5Si - 14Cr - 3.1B - 4.5Fe 1790° - 1970°F (975° - 1075°C) Solidus-Liquidus Range
- SAE AMS4785B-1984 BRAZING FILLER METAL@ HIGH TEMPERATURE 30Au - 34Pd - 36Ni 2075° - 2130°F (1135° - 1165°C) Solidus-Liquidus Range (UNS P00300)
- SAE AMS4774B-1978 BRAZING FILLER METAL@ SILVER 63Ag – 28.5Cu – 6.0Sn - 2.5Ni 1275° - 1475°F (690° - 800°C) Solidus-Liquidus Range (UNS P07630)
- SAE AMS4782B-1985 Brazing Filler Metal@ Nickel 71Ni - 10Si - 19Cr 1975° to 2075°F (1080° - 1135°C) Solidus-Liquidus Range (UNS N99650)
- SAE AMS4770F-1978 BRAZING FILLER METAL@ SILVER 50Ag - 18Cd - 16.5Zn - 15.5Cu 1160° - 1175°F (625° - 635°C) Solidus -Liquidus Range (UNS P07500)
- SAE AMS4770G-1984 BRAZING FILLER METAL@ SILVER 50Ag - 18Cd - 16.5Zn - 15.5Cu 1160° - 1175°F (625° - 635°C) Solidus -Liquidus Range (UNS P07500)
- SAE AMS4786C-1990 BRAZING FILLER METAL@ HIGH TEMPERATURE 70Au - 8.0Pd - 22Ni 1845° - 1915° F (1007° - 1046° C) Solidus-Liquidus Range (UNS P00700)
- SAE AMS4769C-1984 Brazing Filler Metal@ Silver 45Ag - 24Cd - 16Zn - 15Cu 1125° - 1145°F (605° - 620°C) Solidus-Liquidus Range (UNS P07450)
- SAE AMS4786B-1984 BRAZING FILLER METAL@ HIGH TEMPERATURE 70Au - 8.0Pd - 22Ni 1845° - 1915°F (1005° - 1045°C) Solidus-Liquidus Range (UNS P00700)
- SAE AMS4782G-2017 Nickel Alloy@ Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 °F (1080 °C) Solidus@ 2075 °F (1135 °C) Liquidus (UNS N99650)
- SAE AMS4776B-1981 Brazing Filler Metal@ Nickel 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790° - 1970°F (975° - 1075°C) Solidus-Liquidus Range
- SAE AMS4779J-2017 Nickel Alloy@ Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 °F (982 °C) Solidus@ 1950 °F (1066 °C) Liquidus (UNS N99640)
- SAE MAM4778D-2003 Nickel Alloy@ Brazing Filler Metal 92Ni - 4.5Si - 3.1B 980 to 1040 °C Solidus-Liquidus Range (UNS N99630)
- SAE AMS4783B-1985 Brazing Filler Metal@ High Temperature 50Co - 8.0Si - 19Cr - 17Ni - 4.0W - 0.80B 2050° - 2100°F (1120° - 1150°C) Solidus-Liquidus Range
- SAE AMS4778L-2019 Nickel Alloy@ Brazing Filler Metal 92Ni - 4.5Si - 3.1B 1800 to 1900 °F Solidus-Liquidus Range (UNS N99630)
- SAE AMS4776A-1978 Brazing Filler Metal@ Nickel 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790° - 1970°F (975° - 1075°C) Solidus-Liquidus Range
- SAE AMS4771E-1984 Brazing Filler Metal@ Silver 50Ag - 16Cd - 15.5Zn - 15.5Cu - 3.0Ni 1170° - 1270°F (630° - 690°C) Solidus-Liquidus Range (UNS P07501)
- SAE AMS4784B-1984 BRAZING FILLER METAL@ HIGH TEMPERATURE 50Au - 25Pd - 25Ni@ 2015° - 2050°F (1100° to 1120 °C) Solidus-Liquidus Range (UNS P00500)
- SAE AMS4779K-2018 Nickel Alloy@ Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 °F (982 °C) Solidus@ 1950 °F (1066 °C) Liquidus (UNS N99640)
- SAE AMS4778E-1992 Nickel Alloy Brazing Filler Metal 92Ni - 4.5Si - 3.1B 1800 to 1900 °F Solidus-Liquidus Range (UNS N99630)
- SAE AMS4783A-1978 Brazing Filler Metal@ High Temperature 50Co - 8.0Si - 19Cr - 17Ni - 4.0W - 0.80B 2050° - 2100°F (1120° - 1150°C) Solidus-Liquidus Range
- SAE AMS4784C-1990 BRAZING FILLER METAL@ HIGH TEMPERATURE 50Au - 25Pd - 25Ni@ 2015° - 2050°F (1102° - 1121°C) Solidus-Liquidus Range (UNS P00500)
- SAE AMS4787D-1992 Gold-Nickel Alloy Brazing Filler Metal@ High Temperature 82Au - 18Ni 1740 Degrees F (949 Degrees C) Solidus- Liquidus Temperature
- SAE AMS4782D-1994 Nickel Alloy@ Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 to 2075 °F (1080 to 1135 °C) Solidus-Liquidus Range (UNS N99650)
- SAE AMS4765C-1991 Filler Metal@ Silver@ Brazing 56Ag - 42Cu - 2.0Ni 1420° to 1640° F (771° to 893°C) Solidus-Liquidus Range (UNS P07560)
- SAE MAM4778C-1995 Nickel Alloy@ Brazing Filler Metal 92Ni - 4.5Si - 3.1B 980 to 1040 Degrees C Solidus- Liquidus Range (UNS N99630)
- SAE AMS4778G-1995 Nickel Alloy@ Brazing Filler Metal 92Ni - 4.5Si - 3.1B 1800 to 1900 Degrees F Solidus-Liquidus Range (UNS N99630)
- SAE AMS4773G-2016 Silver Alloy@ Brazing Filler Metal 60Ag – 30Cu – 10Sn 1115 to 1325 °F (602 to 718 °C) Solidus-Liquidus Range (UNS P07600)
- SAE AMS4780G-2018 Manganese Alloy@ Brazing Filler Metal 66Mn - 16Ni - 16Co - 0.80B 1770 to 1875 °F (966 to 1024 °C) Solidus-Liquidus Range (UNS M26800)
- SAE AMS4789-1992 SILVER ALLOY BRAZING FILLER METAL 56Ag - 22Cu - 17Zn - 5.0Sn 1152 to 1205 °F (618 to 652°C) Solidus-Liquidus Range (UNS P07563)
- SAE AMS4775K-2018 Nickel Alloy@ Brazing Filler Metal 73Ni - 0.75C - 4.5Si - 14Cr - 3.1B - 4.5Fe 1790 °F (977 °C) Solidus to 1970 °F (1077 °C) Liquidus (UNS N99600)
- SAE AMS4779D-1992 Nickel Alloy Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 to 1950 °F (982 to 1066 °C) Solidus-Liquidus Range (UNS N99640)
- SAE AMS4782C-1992 Nickel Alloy Brazing Filler Metal 71Ni - 10Si - 19Cr 1975 to 2075 °F (1080 to 1135 °C) Solidus-Liquidus Range (UNS N99650)
- SAE AMS4777E-1994 Nickel Alloy@ Brazing Filler Metal 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780 to 1830 °F (971 to 999 °C) Solidus-Liquidus Range (UNS N99620)
- SAE AMS4787E-1999 Gold-Nickel Alloy@ Brazing Filler Metal@ High Temperature 82Au - 18Ni 1740 Degrees F (949 Degrees C) Solidus-Liquidus Temperature (UNS P00820)
- SAE AMS4779E-1994 Nickel Alloy@ Brazing Filler Metal 94Ni - 3.5Si - 1.8B 1800 to 1950 °F (982 to 1066 °C) Solidus-Liquidus Range (UNS N99640)
- SAE AMS4777D-1992 Nickel Alloy@ Brazing Filler Metal 82Ni - 4.5Si - 7.0Cr - 3.1B - 3.0Fe 1780 to 1830 °F (971 to 999 °C) Solidus-Liquidus Range (UNS N99620)
- SAE AMS4786G-2007 Gold-Palladium-Nickel Alloy@ Brazing Filler Metal@ High Temperature 70Au - 8.0Pd - 22Ni 1845 to 1915 °F (1007 to 1046 °C) Solidus-Liquidus Range (UNS P00700)
- SAE AMS4776D-1992 Nickel Alloy@ Brazing Filler Metal 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790 to 1970 °F (977 to 1077 °C) Solidus-Liquidus Range (UNS N99610)
- SAE AMS4765D-1992 Silver Alloy Brazing Filler Metal 56Ag - 42Cu - 2.0Ni 1420 to 1640 Degrees F (771 to 893 Degrees C) Solidus- Liquidus Range
- SAE AMS4784F-2001 Gold-Palladium-Nickel Alloy@ Brazing Filler Metal@ High Temperature 50Au - 25Pd - 25Ni 2015 to 2050 °F (1102 to 1121 °C) Solidus-Liquidus Range (UNS P00500)
- SAE AMS4776E-1994 Nickel Alloy@ Brazing Filler Metal 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790 to 1970 °F (977 to 1077 °C) Solidus-Liquidus Range (UNS N99610)
- SAE AMS4776J-2018 Nickel Alloy@ Brazing Filler Metal 73Ni - 4.5Si - 14Cr - 3.1B - 4.5Fe (Low Carbon) 1790 °F (977 °C) Solidus to 1970 °F (1077 °C) Liquidus Range (UNS N99610)
- SAE AMS4769E-1992 Silver Alloy Brazing Filler Metal 45Ag - 24Cd - 16Zn - 15Cu 1125 to 1145 Degrees F (607 to 618 Degrees C) Solidus- Liquidus Range
- SAE AMS4770J-1992 Silver Alloy Brazing Filler Metal 50Ag - 18Cd - 16.5Zn - 15.5Cu 1160 to 1175 Degrees F (627 to 635 Degrees C) Solidus -Liquidus Range
- SAE AMS4778B-1978 Brazing Filler Metal@ Nickel 92Ni - 4.5Si - 3.1B 1800° - 1900°F (980° - 1040°C) Solidus-Liquidus Range
- SAE AMS4778C-1981 Brazing Filler Metal@ Nickel 92Ni - 4.5Si - 3.1B 1800° - 1900°F (980° - 1040°C) Solidus-Liquidus Range
German Institute for Standardization
- DIN ISO 20179:2007-10 Water quality - Determination of microcystins - Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection (ISO 20179:2005)
- DIN EN 15890:2010-12 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection; German version EN 15890:2010
- DIN EN 15890:2010 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection; German version EN 15890:2010
- DIN EN 12679:2018-12 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources; German version EN 12679:2018
- DIN ISO 20179:2007 Water quality - Determination of microcystins - Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection (ISO 20179:2005) English version of DIN ISO 20179:2007-10
- DIN EN ISO 11369:1997-11 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction (ISO 11369:1997); German version EN ISO 11369:1997
- DIN EN ISO 22478:2006-07 Water quality - Determination of certain explosives and related compounds - Method using high-performance liquid chromatography (HPLC) with UV detection (ISO 22478:2006); German version EN ISO 22478:2006
- DIN EN 12543-3:1999-12 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 3: Slit camera radiographic method; German version EN 12543-3:1999
- DIN EN 12679:2018 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources; German version EN 12679:2018
- DIN EN 12543-2:2021-06 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method; German version EN 12543-2:2021
- DIN EN ISO 17495:2003-09 Water quality - Determination of selected nitrophenols - Method by solid phase extraction and gas chromatography with mass spectrometric detection (ISO 17495:2001); German version EN ISO 17495:2003
- DIN EN ISO 20769-2:2018-12 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2: Double wall radiographic inspection (ISO 20769-2:2018); German version EN ISO 20769-2:2018
- DIN EN ISO 20769-1:2018-12 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 1: Tangential radiographic inspection (ISO 20769-1:2018); German version EN ISO 20769-1:2018
American Society for Testing and Materials (ASTM)
- ASTM E685-93(2021) Standard Practice for Testing Fixed-Wavelength Photometric Detectors Used in Liquid Chromatography
- ASTM E685-93 Standard Practice for Testing Fixed-Wavelength Photometric Detectors Used in Liquid Chromatography
- ASTM E685-93(2013) Standard Practice for Testing Fixed-Wavelength Photometric Detectors Used in Liquid Chromatography
- ASTM C1720-11e1 Standard Test Method for Determining Liquidus Temperature of Immobilized Waste Glasses and Simulated Waste Glasses
- ASTM E1303-95(2005) Practice for Refractive Index Detectors Used in Liquid Chromatography
- ASTM E1303-95 Practice for Refractive Index Detectors Used in Liquid Chromatography
- ASTM E1303-95(2000) Practice for Refractive Index Detectors Used in Liquid Chromatography
British Standards Institution (BSI)
- BS EN ISO 11369:1997(2008)*BS 6068-2.61:1997 Water quality — Determination of selected plant treatment agents — Method using high performance liquid chromatography with UV detection after solid - liquid extraction
- BS EN 1435:1997(2004) Non - destructive testing of welds — Radiographic testing of welded joints
- BS EN ISO 11369:1997 Water quality. Determination of selected plant treatment agents. Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- BS EN ISO 17636-1:2013 Non-destructive testing of welds. Radiographic testing. X- and gamma-ray techniques with film
- BS EN 16407-1:2014 Non-destructive testing. Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays. Tangential radiographic inspection
- BS EN 16407-2:2014 Non-destructive testing. Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays. Double wall radiographic inspection
- BS EN ISO 17495:2003(2008) Water quality — Determination of selectednitrophenols — Method by solid - phase extraction and gas chromatography with mass spectrometric detection
- 24/30454191 DC ISO 13646 Water quality. Determination of selected estrogens in whole water samples. Method using solid phase extraction (SPE) followed by liquid chromatography (LC) or gas chromatography (GC) coupled to mass spectrometry (MS) detection
- 23/30477213 DC BS ISO 32679. Non-destructive testing. Radiographic testing. Determination of the size of industrial radiographic gamma sources
- BS EN 444:1994(1999) Non - destructive testing — General principles for radiographic examination of metallic materials by X - and gamma - rays
Danish Standards Foundation
- DS/EN ISO 11369:1998 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction
- DS/ISO 20179:2007 Water quality - Determination of microcystins - Method using solid phase extraction (SPE) and high performance liquid chromatography (HPLC) with ultraviolet (UV) detection
- DS/EN 15890:2011 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- DS/EN 12679:2002 Non-destructive testing - Determination of the size of industrial radiographic sources - Radiographic method
- DS/EN ISO 17636-2:2013 Non-destructive testing of welds - Radiographic testing - Part 2: X- and gamma-ray techniques with digital detectors
- DS/EN ISO 17636-1:2013 Non-destructive testing of welds - Radiographic testing - Part 1: X- and gamma-ray techniques with film
- DS/EN 12543-2:2021 Non-destructive testing – Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing – Part 2: Pinhole camera radiographic method
European Committee for Standardization (CEN)
- EN ISO 11369:1997 Water Quality - Determination of Selected Plant Treatment Agents - Method Using High Performance Liquid Chromatography with UV Detection After Solid-Liquid Extraction ISO 11369: 1997
HU-MSZT
- MSZ 9402/12.lap-1958 Color fixation detection of textile materials. Testing the effect of fixative solution
- MSZ 9402/43.lap-1963 Color fixation detection of textile materials. organic solution
- MSZ 4310/6-1974 Anti-corrosion testing of welded fixings. General technical standards for optical photography testing
- MSZ 9402/36.lap-1961 Color fixation detection of textile materials. Organic solution rubbing
IN-BIS
- IS 2595-1978 Radiographic Inspection Operating Specifications
BSI
- BS ISO 32679:2024 Non-destructive testing. Radiographic testing. Determination of the size of industrial radiographic gamma sources
YU-JUS
- JUS H.Z8.053-1984 Testing ofengine antifreezes. Determination of freezing point
DIN
- DIN EN 14524:2004 Foodstuffs - Determination of okadaic acid in mussels - HPLC method with solid phase extraction clean-up, derivatization and fluorimetric detection
- DIN EN 12543-2:2021 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
ES-UNE
- UNE-EN 12679:2019 Non-destructive testing - Radiographic testing - Determination of the size of industrial radiographic gamma sources
- UNE-EN 12543-2:2021 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 2: Pinhole camera radiographic method
- UNE-EN ISO 20769-1:2019 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X - and gamma rays - Part 1: Tangential radiographic inspection (ISO 20769-1:2018)
- UNE-EN ISO 20769-2:2019 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2: Double wall radiographic inspection (ISO 20769-2:2018)
ASD-STAN - Aerospace and Defence Industries Association of Europe - Standardization
- PREN 3877-1993 Aerospace Series Test Method for Braze Alloys Determination of Solidus and Liquidus Temperatures by Differential Thermal Analysis
- PREN 3877-1997 Aerospace Series Metallic Materials Test Method Determination of Solidus and Liquidus Temperatures by Differential Thermal Analysis of Braze Alloys (Edition P 1)
Lithuanian Standards Office
- LST EN ISO 11369:2000 Water quality - Determination of selected plant treatment agents - Method using high performance liquid chromatography with UV detection after solid-liquid extraction (ISO 11369:1997)
- LST EN 1435-1998/A1-2002 Non-destructive testing of welds - Radiographic testing of welded joints
- LST EN 1435-1998/A2-2004 Non-destructive testing of welds - Radiographic testing of welded joints
- LST EN 1435-1998 Non-destructive examination of welds - Radiographic examination of welded joints
- LST EN 15890-2010 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- LST EN 12679-2002 Non-destructive testing - Determination of the size of industrial radiographic sources - Radiographic method
ZA-SANS
- SANS 5289:1987 Chlorides in solids and liquids, detection
- SANS 394:2004 Non-destructive testing - Radiographic examination of metallic materials by X- and gamma-rays - Basic rules
AENOR
- UNE-EN 15890:2011 Foodstuffs - Determination of patulin in fruit juice and fruit based purée for infants and young children - HPLC method with liquid/liquid partition cleanup and solid phase extraction and UV detection
- UNE-EN ISO 11369:1998 WATER QUALITY. DETERMINATION OF SELECTED PLANT TREATMENT AGENTS. METHOD USING HIGH PERFORMANCE LIQUID CHROMATOGRAPHY WITH UV DETECTION AFTER SOLID-LIQUID EXTRACTION. (ISO 11369:1997).
- UNE-EN 12681:2003 Founding - Radiographic examination
Japanese Industrial Standards Committee (JISC)
- JIS Z 3107:1993 Methods of radiographic examination for titanium welds by X-ray
CEN - European Committee for Standardization
- EN ISO 20769-2:2018 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X- and gamma rays - Part 2: Double wall radiographic inspection
- EN ISO 20769-1:2018 Non-destructive testing - Radiographic inspection of corrosion and deposits in pipes by X - and gamma rays - Part 1: Tangential radiographic inspection
Standard Association of Australia (SAA)
- AS 2168.2:2009 Nondestructive testing Computerized radiography uses X-rays and gamma rays to detect metallic materials
- AS 2168.1:2009 Computerized Radiography System for Nondestructive Testing
Defense Logistics Agency
- DLA SMD-5962-87803 REV D-2011 MICROCIRCUITS, LINEAR, PHASE FREQUENCY DETECTOR, MONOLITHIC SILICON
AT-ON
- ONORM M 6623-1994 Water analysis - Determination of phenoxyalkyl carbonic acids by gas chromatography and mass-spectrometric detection after solid-liquid-extraction and derivatization
U.S. Military Regulations and Norms
- ARMY MIL-STD-1166 A-1991 RADIOGRAPHIC TESTING REQUIREMENTS FOR SOLID PROPELLANTS
- ARMY MIL-STD-1166 A NOTICE 1-2001 RADIOGRAPHIC TESTING REQUIREMENTS FOR SOLID PROPELLANTS
CH-SNV
- SEV 0178-1957 Winding wire. Detection method. Solution resistance of enameled wire insulation
Aerospace, Security and Defence Industries Association of Europe (ASD)
- ASD-STAN PREN 3877-1997 Aerospace Series Metallic Materials Test Method Determination of Solidus and Liquidus Temperatures by Differential Thermal Analysis of Braze Alloys (Edition P 1)
American Society of Mechanical Engineers (ASME)
- ASME SEC V B SE-1030-2003 Standard Test Method for Radiographic Examination of Metallic Castings ASTM E 1030-00
UNKNOWN
- GB/T 32211-2015 Test Method for Variable Wavelength Photometric Detectors for Liquid Chromatography
GOST
- GOST ISO 17993-2016 Water quality Determination of 15 polycyclic aromatic hydrocarbons (PAHs) High performance liquid chromatography method with fluorescence detection after liquid-liquid extraction
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